Classifying the diverse ways that plants respond to hydrologic stress into generalizable 'water-use strategies' has long been an eco-physiological research goal. While many schemes for describing water-use strategies have proven to be quite useful, they are also associated with uncertainties regarding their theoretical basis and their connection to plant carbon and water relations. In this review, we discuss the factors that shape plant water stress responses and assess the approaches used to classify a plant's water-use strategy, paying particular attention to the popular but controversial concept of a continuum from isohydry to anisohydry. A generalizable and predictive framework for assessing plant water-use strategies has been historic...
Plant adaptation to drought has been extensively studied at many scales from ecology to molecular bi...
- The isohydry‐anisohydry spectrum has become a popular way to characterize plant drought responses ...
Attempts to understand mechanisms underlying plant mortality during drought have led to the emergenc...
Plant responses to water stress influence water and carbon cycles and can lead to feedbacks on clima...
Vegetation responds to drought through a complex interplay of plant hydraulic mechanisms, posing cha...
Vegetation responds to drought through a complex interplay of plant hydraulic mechanisms, posing cha...
The iso/anisohydric continuum describes how plants regulate leaf water potential and is commonly use...
Abstract Despite the appeal of the iso/anisohydric framework for classifying plant drought response...
Many recent studies on drought-induced vegetation mortality have explored how plant functional trait...
Water availability has a decisive impact on plant growth, survival and distribution. Climate change ...
Plants are highly sensitive to the water status of the soil in which they grow, with too little soil...
Plant function requires effective mechanisms to regulate water transport at a variety of scales. Her...
The growing concerns about water scarcity have focused more attention on water management in agricul...
Despite the appeal of the iso/anisohydric framework for classifying plant drought responses, recent ...
The iso/anisohydric continuum describes how plants regulate leaf water potential and is commonly use...
Plant adaptation to drought has been extensively studied at many scales from ecology to molecular bi...
- The isohydry‐anisohydry spectrum has become a popular way to characterize plant drought responses ...
Attempts to understand mechanisms underlying plant mortality during drought have led to the emergenc...
Plant responses to water stress influence water and carbon cycles and can lead to feedbacks on clima...
Vegetation responds to drought through a complex interplay of plant hydraulic mechanisms, posing cha...
Vegetation responds to drought through a complex interplay of plant hydraulic mechanisms, posing cha...
The iso/anisohydric continuum describes how plants regulate leaf water potential and is commonly use...
Abstract Despite the appeal of the iso/anisohydric framework for classifying plant drought response...
Many recent studies on drought-induced vegetation mortality have explored how plant functional trait...
Water availability has a decisive impact on plant growth, survival and distribution. Climate change ...
Plants are highly sensitive to the water status of the soil in which they grow, with too little soil...
Plant function requires effective mechanisms to regulate water transport at a variety of scales. Her...
The growing concerns about water scarcity have focused more attention on water management in agricul...
Despite the appeal of the iso/anisohydric framework for classifying plant drought responses, recent ...
The iso/anisohydric continuum describes how plants regulate leaf water potential and is commonly use...
Plant adaptation to drought has been extensively studied at many scales from ecology to molecular bi...
- The isohydry‐anisohydry spectrum has become a popular way to characterize plant drought responses ...
Attempts to understand mechanisms underlying plant mortality during drought have led to the emergenc...